US9843845B2

Terrestrial broadcast market exchange network platform and broadcast augmentation channels for hybrid broadcasting in the internet age

Summary by NHIP

Hybrid Broadcast Market Exchange

The system uses a gateway to assemble content into unified frames for transmission via VHF or UHF bands. A gateway determines wireless spectrum allocation from a shared pool of non-contiguous bands owned by multiple broadcasters based on physical properties of those bands.

Claim Score by NHIP

Read claim 32, the broadest

Abstract

A new television broadcast model called a Broadcast Market Exchange (BMX) eliminates the inefficiency in spectrum usage, providing maximum flexibility in delivering content through either VHF (for fixed location receiving devices) or UHF (optimized for mobile receiving devices) transmission/propagation. In conjunction with the BMX, a wireless communications system architecture is provided to enable a broadcast augmentation channel. The augmentation channel provides supplementation of the Quality of Service (QoS) of a one way User Datagram Protocol (UDP) delivery environment. The augmentation channel may be comprised of one or more physical delivery mechanisms (wired or wireless), but can be effectively unified for increasing QoS and or scalable levels of service (additional essence) to improve the user experience.

US9843845B2, drawing sheet 1
Sheet 1 of 15

Term

7.2 yearsleft in the term

Expires 28 November 2033.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

32 claims: 3 independent, 29 dependent

  1. 1
    A terrestrial television broadcasting system, comprising:a plurality of radio frequency (RF) terrestrial television broadcast transmitters;and a broadcast gateway configured to receive content from a plurality of content providers, assemble the content into a unified transmission frame, and output the unified transmission frame to the plurality of RF terrestrial television broadcast transmitters for RF broadcast transmission, wherein the broadcast gateway is further configured to: receive an Internet Protocol (IP) flow associated with a content provider of the plurality of content providers;determine a wireless spectrum allocation for the IP flow from a shared broadcast RF spectrum pool managed by the broadcast gateway for a plurality of broadcasters, wherein the shared broadcast RF spectrum pool is comprised of wireless spectrum blocks owned by respective ones of the plurality of broadcasters, the wireless spectrum blocks forming a plurality of non-contiguous wireless spectrum bands;and map the IP flow to physical layer resources of the unified transmission frame, wherein the wireless spectrum allocation is in a wireless spectrum band of the plurality of non-contiguous wireless spectrum bands, and wherein the wireless spectrum allocation is determined based at least in part on a physical property of the wireless spectrum band.
  2. 31
    A terrestrial television broadcasting system, comprising:an input router configured to receive an Internet Protocol (IP) flow from a content provider of a plurality of content providers;and a broadcast gateway configured to: determine a wireless spectrum allocation for the IP flow from a shared broadcast radio frequency (RF) spectrum pool managed by the broadcast gateway for a plurality of broadcasters, wherein the shared broadcast RF spectrum pool is comprised of wireless spectrum blocks owned by respective ones of the plurality of broadcasters, the wireless spectrum blocks forming a plurality of non-contiguous wireless spectrum bands;map the IP flow to physical layer resources of a unified transmission frame based on the wireless spectrum allocation;and output the unified transmission frame to a plurality of RF terrestrial television broadcast transmitters, wherein the wireless spectrum allocation is in a wireless spectrum band of the plurality of non-contiguous wireless spectrum bands, and wherein the wireless spectrum allocation is determined based at least in part on a physical property of the wireless spectrum band.
  3. 32
    Broadest claimClaim Score 35, narrow(NHIP)A method for data broadcast, comprising:receiving, by an input router, an Internet Protocol (IP) flow from a content provider of a plurality of content providers;determining, by a broadcast gateway, a wireless spectrum allocation for the IP flow from a shared broadcast radio frequency (RF) spectrum pool managed by the broadcast gateway for a plurality of broadcasters, wherein the shared broadcast RF spectrum pool is comprised of wireless spectrum blocks owned by respective ones of the plurality of broadcasters, the wireless spectrum blocks forming a plurality of non-contiguous wireless spectrum bands;mapping the IP flow to physical layer resources of a unified transmission frame based on the wireless spectrum allocation;and outputting the unified transmission frame to a plurality of RF terrestrial television broadcast transmitters, wherein the wireless spectrum allocation is in a wireless spectrum band of the plurality of non-contiguous wireless spectrum bands, and wherein the wireless spectrum allocation is determined based at least in part on a physical property of the wireless spectrum band.